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  Vegetation dynamics amplifies precessional forcing

Claussen, M., Fohlmeister, J., Ganopolski, A., & Brovkin, V. (2006). Vegetation dynamics amplifies precessional forcing. Geophysical Research Letters, 33: L09709. doi:10.1029/2006GL026111.

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2006GL026111.pdf (Publisher version), 268KB
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Copyright 2006 by the American Geophysical Union
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 Creators:
Claussen, Martin1, Author                 
Fohlmeister, Jens, Author
Ganopolski, Andrey2, Author           
Brovkin, Victor2, Author                 
Affiliations:
1Director’s Research Group LES, The Land in the Earth System, MPI for Meteorology, Max Planck Society, ou_913564              
2External Organizations, ou_persistent22              

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Free keywords: 0416 Biogeosciences: Biogeophysics; 0426 Biogeosciences: Biosphere/atmosphere interactions (0315); 0429 Biogeosciences: Climate dynamics (1620); 3344 Atmospheric Processes: Paleoclimatology (0473, 4900); 4928 Paleoceanography: Global climate models (1626, 3337)
 Abstract: The astronomical theory of climate variations predicts that the climatic precession which changes the seasonal distance between Earth and Sun does not affect the annual mean irradiation at any given latitude. However, previous modeling studies suggest that during interglacials, the interaction between atmosphere, vegetation and ocean can transform the seasonal forcing by precession into an annual mean global signal. Here, we show that this result can be generalized. A distinct precessional signal emerges in a climate system model over many precessional cycles. While neither the atmosphere-ocean nor the atmosphere-vegetation model are able to produce a large amplitude of global temperature in the precessional band, only the mutual amplification of biogeophysical feedback and sea ice- albedo feedback allows a strong amplification of the precessional signal

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Language(s): eng - English
 Dates: 2006-05
 Publication Status: Issued
 Pages: -
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 Table of Contents: -
 Rev. Type: Peer
 Identifiers: eDoc: 276227
DOI: 10.1029/2006GL026111
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Title: Geophysical Research Letters
  Alternative Title : Geophys. Res. Letts.
Source Genre: Journal
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Pages: - Volume / Issue: 33 Sequence Number: L09709 Start / End Page: - Identifier: -